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Notch sensitivity of two materials including TiAl alloys and K418 alloys

机译:TiAl合金和K418合金两种材料的缺口敏感性

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The tensile sensitivity of notch specimens has been investigated for TiAl alloys and K418 alloys. The notch strength has been quantitatively analyzed. Fracture surfaces of series specimens are also observed and analyzed by scanning electron microscopy (JEOL-6700F). By comparison with series results of notch rod tensile specimens and the special notch rod tensile specimens, it can be found that: Ductile fracture (tear ridge) and dendriage fracture dominate fracture surface of K418 alloys, however, quasicleavage fracture including interlamellar fracture and translamellar fracture dominate fracture surface of TiAl alloys. The basic nature of two materials are different, and the driving force of fracture and fracture criteria are also different for brittle TiAl alloys and ductile K418 alloys. For K418 alloys, the final fracture of specimens is controlled by strain not by stress, no notch sensitivity is existed in K418 alloys. However, for TiAl alloys, the final fracture of specimens is controlled by stress, smaller notch sensitivity is existed in TiAl alloys. For special notch rod tensile specimens, no notch sensitivity still appear for K418 alloys. However, for TiAl alloys, when notch depth reaches 10% of specimen diameters, tensile strength decrease. When notch depth reaches 20% of specimen diameters, tensile strength sharply decrease, these parameters are regarded as a important parameter estimating notch depth or depth of casting defect.
机译:对于TiAl合金和K418合金,已经研究了缺口试样的拉伸敏感性。缺口强度已被定量分析。还可以通过扫描电子显微镜(JEOL-6700F)观察和分析系列试样的断裂表面。通过对槽口拉力试样和特殊槽口拉力试样的系列结果进行比较,可以发现:延性断裂(撕裂脊)和树枝状断裂占K418合金断裂面的主导地位,而准断裂断裂包括层间断裂和层间断裂TiAl合金的断裂面占主导地位。两种材料的基本性质不同,脆性TiAl合金和韧性K418合金的断裂驱动力和断裂准则也不同。对于K418合金,试样的最终断裂是通过应变而不是应力来控制的,K418合金中不存在缺口敏感性。但是,对于TiAl合金,试样的最终断裂受应力控制,TiAl合金的缺口敏感性较小。对于特殊的缺口杆拉伸试样,K418合金仍然没有缺口敏感性。但是,对于TiAl合金,当缺口深度达到试样直径的10%时,抗拉强度会降低。当缺口深度达到试样直径的20%时,抗拉强度急剧下降,这些参数被视为估算缺口深度或铸件缺陷深度的重要参数。

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